Department of Agricultural Biotechnology, Assam Agricultural University, Jorhat 785013, India.
Department of Bioengineering and Technology, Gauhati University, Guwahati 781014, India.
Protein Pept Lett. 2021;28(3):323-332. doi: 10.2174/0929866527666200910164118.
Chickpea is a widely grown legume in India, Australia, Canada, and Mediterranean regions. Seeds of chickpea are good source of protein for both human and animals. Wild relatives of chickpea (Cicer arietinum) are the potential gene pool for crop improvement; however, very little information is available on the seed proteome of these wild chickpeas.
We aimed to analyze the seed proteome profiles of three wild relatives of chickpea, Cicer bijugum, Cicer judaicum and Cicer microphyllum along with two cultivated varieties JG11 and DCP 92/3.
Total seed proteins were extracted using various extraction buffers for 2-D gel electrophoresis. Protein separated in a 2-D gels were subjected to image analyses, differentially expressed proteins were extracted from the gels and identified by the MALDI TOF/TOF. Seed protease inhibitors were analysed biochemically.
We have standardized the 2-D gel electrophoresis method and separated seed proteins using the modified method. We identified a large number (400) of protein proteins which were differentially expressed in cultivated and wild type species of chickpea. A comparative analysis between C. bijugum and JG 11 revealed the presence of 9 over-expressed and 22 under-expressed proteins, while the comparison between C. bijugum with DCP 92/3 showed 8 over-expressed and 18 under-- expressed proteins. Similarly, comparative analysis between C. microphyllum with DCP 92/3 showed 8 over-expressed proteins along with 22 under-expressed proteins, while the comparative study of C. microphyllum with JG11 displayed 9 over-expressed and 24 under-expressed proteins. We also compared C. judaicum with DCP 92/3 which revealed 15 overexpressed and 11 under-expressed proteins. On the other hand, the comparative analysis of C. judaicum with JG11 showed 10 over-expressed proteins, while the numbers of under-expressed proteins were 14. Among the differentially expressed protein proteins, 19 proteins were analyzed by the MS/MS, and peptides were identified using the MASCOT search engine. In the wild relatives the differentially expressed proteins are phosphatidylinositol 4-phosphate 5- kinase, β-1-6 galactosyltransferase, RNA helicase, phenyl alanine ammonia lyase 2, flavone 3'-0-methyl transferase, Argonaute 2, Myb related protein, Tubulin beta-2 chain and others. The most important one was legumin having α- amylase inhibition activity which was up regulated in C. bijugum. We also studied the activity of protease inhibitor (trypsin and α- amylase inhibitors) in these seed lines which showed differential activity of protease inhibitors. The highest trypsin and α- amylase inhibition was observed in C. judaicum and C. bijugum, respectively.
The differentially expressed proteins of wild relatives of chickpea appeared to be involved in various metabolic pathways. The study provides us information about the differences in the seed proteome of these wild species and cultivated varieties for the first time.
鹰嘴豆是一种在印度、澳大利亚、加拿大和地中海地区广泛种植的豆类。鹰嘴豆种子是人和动物蛋白质的良好来源。鹰嘴豆的野生亲缘种(Cicer arietinum)是作物改良的潜在基因库;然而,关于这些野生鹰嘴豆的种子蛋白质组,几乎没有信息。
我们旨在分析三种鹰嘴豆野生亲缘种(Cicer bijugum、Cicer judaicum 和 Cicer microphyllum)以及两种栽培品种 JG11 和 DCP 92/3 的种子蛋白质组图谱。
使用各种提取缓冲液从总种子蛋白中提取蛋白质,用于 2-DE 电泳。在 2-DE 凝胶中分离的蛋白质进行图像分析,从凝胶中提取差异表达的蛋白质,并通过 MALDI TOF/TOF 进行鉴定。种子蛋白酶抑制剂进行了生化分析。
我们已经标准化了 2-DE 电泳方法,并使用改良的方法分离了种子蛋白质。我们鉴定了大量(400 个)在栽培和野生型鹰嘴豆中差异表达的蛋白质。C. bijugum 与 JG 11 的比较分析显示,9 种蛋白质表达上调,22 种蛋白质表达下调,而 C. bijugum 与 DCP 92/3 的比较分析显示,8 种蛋白质表达上调,18 种蛋白质表达下调。同样,C. microphyllum 与 DCP 92/3 的比较分析显示 8 种蛋白质表达上调,22 种蛋白质表达下调,而 C. microphyllum 与 JG11 的比较研究显示 9 种蛋白质表达上调,24 种蛋白质表达下调。我们还比较了 C. judaicum 与 DCP 92/3,结果显示 15 种蛋白质表达上调,11 种蛋白质表达下调。另一方面,C. judaicum 与 JG11 的比较分析显示 10 种蛋白质表达上调,而表达下调的蛋白质数量为 14 种。在差异表达的蛋白质中,19 种蛋白质进行了 MS/MS 分析,并用 MASCOT 搜索引擎鉴定了肽段。在野生亲缘种中,差异表达的蛋白质有磷脂酰肌醇 4-磷酸 5-激酶、β-1-6 半乳糖基转移酶、RNA 解旋酶、苯丙氨酸氨解酶 2、黄酮 3'-0-甲基转移酶、Argonaute 2、Myb 相关蛋白、微管β-2 链等。最重要的是 legumin,它具有α-淀粉酶抑制活性,在 C. bijugum 中上调。我们还研究了这些种子系中蛋白酶抑制剂(胰蛋白酶和α-淀粉酶抑制剂)的活性,结果显示蛋白酶抑制剂的活性存在差异。在 C. judaicum 和 C. bijugum 中观察到最高的胰蛋白酶和α-淀粉酶抑制活性。
鹰嘴豆野生亲缘种的差异表达蛋白似乎参与了各种代谢途径。该研究首次为我们提供了这些野生种和栽培品种种子蛋白质组差异的信息。